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    • 1. 发明申请
    • NET STRUCTURE AND METHOD OF MAKING
    • 网络结构与制作方法
    • US20070210477A1
    • 2007-09-13
    • US11746660
    • 2007-05-10
    • Jayshree SethRonald AusenJanet VenneKatherine Graham
    • Jayshree SethRonald AusenJanet VenneKatherine Graham
    • B29C47/00
    • B29D28/00A44B18/0049A44B18/0053A44B18/0061A44B18/0084B29L2031/729
    • The present invention concerns an extrusion formed reticulated web, mesh or netting including reticulated hook fasteners for use with hook and loop fasteners the polymer netting comprising two sets of strands at angles to each other. The first set of strands are a plurality of oriented (molecular orientation created by stretching) strands extending in a first direction and are generally mutually parallel and linear. The second set of strands are a plurality of substantially parallel strands attached only to a first face of the first set of oriented strands. The first set of oriented strands occupy a first planar cross-sectional area in the thickness direction of the formed netting. Said second set of oriented strands occupy a second planar cross-sectional area in the thickness direction of the formed netting. Preferably, these first and second planar cross-sectional areas are substantially mutually exclusive and are abutting. The polymer netting is preferably made by extruding a thermoplastic resin through a die plate, which die plate is shaped to form a base film layer and spaced ridges or ribs projecting from a surface of the base layer. The spaced ridges or ribs formed by the die form the first set of strands forming the reticulated mesh or netting. The second set of transverse strands are formed by transversely cutting the base layer at spaced locations along a length, at a transverse angle to the ridges or ribs, to form discrete cut portions. Subsequently longitudinal stretching of the ridges (in the direction of the ridges or the machine direction) separates these cut portions of the backing, which cut portion then form the second set of spaced apart strands of the reticulated mesh or netting.
    • 本发明涉及一种挤出成型的网状网状物,网状物或网状物,包括用于钩环紧固件的网状钩紧固件,聚合物网包括彼此成角度的两组线。 第一组股线是沿着第一方向延伸的多个取向(通过拉伸产生的分子取向),并且通常相互平行和线性。 第二组线是多个基本平行的线,仅仅连接到第一组取向线的第一面。 第一组取向的线股在形成的网的厚度方向上占据第一平面横截面积。 所述第二组取向的线在所形成的网的厚度方向占据第二平面横截面积。 优选地,这些第一和第二平面横截面区域基本相互排斥并且邻接。 聚合物网优选通过将热塑性树脂挤出通过模板来制成,该模板被成形为形成基膜层和从基层的表面突出的间隔开的脊或肋。 由模具形成的间隔开的脊或肋形成形成网状网或网的第一组线。 第二组横向股线通过沿着与脊或肋以横向角度的长度在间隔开的位置横向切割基底层而形成,以形成离散的切割部分。 随后,脊的纵向拉伸(在脊或机器方向上)分离背衬的这些切割部分,该切割部分然后形成网状网状物或网状物的第二组间隔开的股线。
    • 2. 发明申请
    • Elevated structured loop
    • 高架结构循环
    • US20060246256A1
    • 2006-11-02
    • US11116555
    • 2005-04-28
    • Ronald AusenJayshree SethJanet Venne
    • Ronald AusenJayshree SethJanet Venne
    • B32B3/06
    • A44B18/0088A44B18/0011A44B18/0034Y10T428/24008Y10T428/24017
    • There is provided a loop laminate for use in a hook and loop fastening system or a hook and loop fastening system. The loop laminate first comprises a backing layer, having a first face and a second face. The backing layer has a plurality of elevated projections extending from at least the first face of the backing layer wherein some of the projections extend by a distance of at least 50 μm. A loop material is attached to at least some of the projections such that said loop material is raised off the backing layer over at least some portion of the distance between adjacent attached projections to allow for hook heads of hooks to easily penetrate the loop material. The hook fastening material has hooks that are arranged in a manner so as to not substantially engage the projections when the hook fastener is engaged with the loop laminate
    • 提供了一种用于钩环紧固系统或钩环紧固系统的回路层压板。 环状层压体首先包括具有第一面和第二面的背衬层。 背衬层具有多个从背衬层的至少第一面延伸的突起,其中一些凸起延伸至少50微米的距离。 环形材料附接到至少一些突起,使得所述环材料在相邻的附接突起之间的距离的至少一些部分上从背衬层上升起,以允许钩的钩头部容易地穿过环材料。 钩紧固材料具有钩,当钩紧固件与环状层压体接合时,钩以这样的方式布置成不与突起基本接合
    • 8. 发明申请
    • Method of extruding articles
    • 挤压制品的方法
    • US20060147686A1
    • 2006-07-06
    • US11151969
    • 2005-06-14
    • Ronald AusenJayshree SethJanet Venne
    • Ronald AusenJayshree SethJanet Venne
    • B29C47/00B32B7/02
    • B29C47/14B29C47/0021B29C47/062B29C47/065B29C47/145B29C47/705Y10T428/24942
    • The present invention method is directed at coextruding a predetermined initial melt stream through at least one profiled die insert, which die insert inlet is shaped to form a nonlinear melt stream from the incoming initial melt stream. The die insert inlet has a nonlinear opening where the die insert opening structure is located between an upper boundary to a lower boundary. The die insert is positioned so as to redirect the flow of one or more of the melt streams or regions of the incoming melt stream. The initial melt stream at the die insert inlet is generally redirected in the cross direction to the original flowpath of the material melt stream. The nonlinear melt stream formed at the die insert inlet then converges within the die insert into a substantially more linear or rectangular melt flow stream at the die insert outlet opening. At the die insert outlet opening at least one layer or portion of the initial melt stream has been partitioned, into different proportions in different zones in the width or cross direction of the extruded material or film. The invention is also directed at articles extruded using the methods described.
    • 本发明的方法涉及通过至少一个成形模插件共挤出预定的初始熔体流,该模插入口被成形为从进入的初始熔体流形成非线性熔体流。 模具插入物入口具有非线性开口,其中模具插入物开口结构位于上边界与下边界之间。 定位模具插入物以便重定向一个或多个熔体流或进入的熔体流的区域的流动。 模具插入口处的初始熔体流通常在横向上被重新定向到材料熔体流的原始流动路径。 在模具插入物入口处形成的非线性熔体流然后在模具插入件内在模具插入物出口开口处会聚到基本上更线性或矩形的熔体流动流中。 在模具插入口开口处,初始熔体流的至少一个或多个部分已经在挤出的材料或膜的宽度或横向上的不同区域中被分隔成不同的比例。 本发明还涉及使用所述方法挤出的制品。